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| Title | An iterative computational design approach to increase the thermal endurance of a mesophilic enzyme. |
|---|---|
| Journal, issue, pages | Biotechnol Biofuels, Vol. 11, Page 189-189, Year 2018 |
| Publish date | Oct 12, 2016 (structure data deposition date) |
Authors | Sammond, D.W. / Kastelowitz, N. / Donohoe, B.S. / Alahuhta, M. / Lunin, V.V. / Chung, D. / Sarai, N.S. / Yin, H. / Mittal, A. / Himmel, M.E. ...Sammond, D.W. / Kastelowitz, N. / Donohoe, B.S. / Alahuhta, M. / Lunin, V.V. / Chung, D. / Sarai, N.S. / Yin, H. / Mittal, A. / Himmel, M.E. / Guss, A.M. / Bomble, Y.J. |
External links | Biotechnol Biofuels / PubMed:30002729 |
| Methods | X-ray diffraction |
| Resolution | 1.67 Å |
| Structure data | ![]() PDB-5tma: |
| Chemicals | ![]() ChemComp-TPP: ![]() ChemComp-MG: ![]() ChemComp-SO4: ![]() ChemComp-EDO: ![]() ChemComp-HOH: |
| Source |
|
Keywords | CELL ADHESION / pyruvate decarboxylase / PDC / mutant / engineered / thermostable |
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zymomonas mobilis (bacteria)
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